Highly improved solar cell efficiency of Mn-doped amine groups-functionalized magnetic Fe3O4@SiO2 nanomaterial
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Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
Wiley Online Library
Open Access Color
GOLD
Green Open Access
Yes
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Publicly Funded
No
Abstract
Herein, magnetic Fe3O4@SiO2 nanomaterial functionalized with amine groups (Fe3O4@SiO2@IPA) doped with manganese (Mn) was prepared, characterized and used for solar cell application. Fe3O4@SiO2@IPA-Mn was prepared via the co-precipitation and sol-gel techniques. Energy-dispersive X-ray (EDX), Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction (XRD) measurements were performed to examine the structure of Fe3O4, Fe3O4@SiO2, Fe3O4@SiO2@IPA and Fe3O4@SiO2@IPA-Mn. General morphology and textural properties of the prepared magnetic nanomaterials were clarified by Brunauer-Emmett-Teller (BET) and scanning electron microscopy (SEM). In addition, Ultraviolet-visible (UV-Vis) spectroscopy and thermal gravimetric analysis (TGA) were used to have a knowledge about the energy band gap and thermal behavior of the prepared magnetic nanomaterials. The energy band gap of Fe3O4@SiO2@IPA with spinel structure was determined as approximately 2.48 eV. It was understood that Fe3O4, Fe3O4@SiO2 and Fe3O4@SiO2@IPA showed type IV-H3 hysteresis cycle according to IUPAC. From the BET data, it was determined that the specific surface areas of Fe3O4, Fe3O4@SiO2 and Fe3O4@SiO2@IPA were 60.85, 28.99 and 40.41 m(2)/g, respectively. The pore size distributions of Fe3O4, Fe3O4@SiO2 and Fe3O4@SiO2@IPA were calculated as 8.55, 1.53 and 1.70 nm, respectively, by the BJH method. Also, it was observed that the dominant pore widths of Fe3O4, Fe3O4@SiO2 and Fe3O4@SiO2@IPA were calculated similar to 5.58, similar to 0.88 and similar to 17.92 nm, respectively, by the DFT method. Au/CuO/Fe3O4@SiO2@IPA-Mn/ZnO/SnO2: F solar cell device was created using existing Fe3O4@SiO2@IPA-Mn as a buffer layer. The power conversion efficiency (%) of Fe3O4@SiO2@IPA-Mn based solar cell device was calculated as 2.054. This finding suggest that Fe3O4@SiO2@IPA-Mn can be used as a promising sensitizer in solar cell technology. Moreover, in this study, the effectiveness of the modification of manganese (one of the transition metals, which is cheap and easily available) with magnetic nanomaterials in the use of solar cell technology was demonstrated for the first time.
Description
Keywords
characterizationmagnetic Fe3O4@SiO2 nanomaterialmanganesesolar cell efficiencysurface coating, magnetic Fe3O4@SiO2 nanomaterial, surface coating, manganese, characterization, characterizationmagnetic Fe3O4@SiO2 nanomaterialmanganesesolar cell efficiencysurface coating, solar cell efficiency
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
Kutluay S, Horoz S, Şahin Ö, Ekinci A, Ece, M. Ş.(2021). Highly improved solar cell efficiency of Mn-doped amine groupsfunctionalized magnetic Fe3O4@SiO2 nanomaterial. Int J Energy Res. 2021;1-10. https://doi.org/10.1002/er.7097
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
35
Source
The International Journal of Energy Research (IJER)
Volume
45
Issue
Start Page
1
End Page
10
URI
. https:// doi.org/10.1002/er.7097
https://www.webofscience.com/wos/woscc/full-record/WOS:000678531600001?AlertId=d383397b-4355-449e-9419-70f9e0e77c15&SID=D16RypV2RqePF6k6aOF
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https://hdl.handle.net/20.500.12514/2821
https://www.webofscience.com/wos/woscc/full-record/WOS:000678531600001?AlertId=d383397b-4355-449e-9419-70f9e0e77c15&SID=D16RypV2RqePF6k6aOF
https://www.scopus.com/record/display.uri?eid=2-s2.0-85111495289&origin=resultslist&sort=plf-f&src=s&sid=06615a743ff07955038ecb768729c82b&sot=b&sdt=b&sl=20&s=DOI%2810.1002%2fer.7097%29&relpos=0&citeCnt=0&searchTerm=
https://hdl.handle.net/20.500.12514/2821
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Citations
CrossRef : 19
Scopus : 39
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Mendeley Readers : 27
SCOPUS™ Citations
39
checked on Feb 02, 2026
Web of Science™ Citations
35
checked on Feb 02, 2026
Page Views
4
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Downloads
39
checked on Feb 02, 2026
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3.37889383
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